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Theoretical study of CO catalytic oxidation on free and defective graphene-supported Au-Pd bimetallic clusters

机译:游离和缺陷石墨烯负载的Au-Pd双金属簇上CO催化氧化的理论研究

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摘要

In this work, CO adsorption and oxidation on free and defective graphene-supported AumPdn (m + n - 13) clusters with either icosahedral (ICO) or truncated octahedral (TO) structures are investigated using density functional theory calculations. It is found that CO adsorbs more strongly than molecular O-2 on the surface of these clusters, which is attributed to the strong hybridization between metal-d and C-p orbitals. In addition, the structural transformation from ICO to TO is observed for the Au-rich clusters upon CO and O-2 adsorption because the stability of the ICO cluster is lower than that of the TO one. It is also found that the free Au12Pd1 cluster with TO structure exhibits the lowest energy barrier for CO oxidation among the free clusters (0.17 eV). When the Au12Pd1 cluster is supported on the single vacancy defective graphene, an increase in stability, a decrease in the adsorption strength of CO and O-2, and a slight increase in the energy barrier (0.41 eV) for CO oxidation compared to the corresponding free cluster are observed. Our results are expected to be useful for future applications of graphene-supported bimetallic nanocatalysts.
机译:在这项工作中,使用密度泛函理论计算研究了具有二十面体(ICO)或截短八面体(TO)结构的游离和有缺陷的石墨烯支撑的AumPdn(m + n-13)簇上的CO吸附和氧化。发现在这些团簇的表面上,CO比分子O-2吸附更强,这归因于金属d和C-p轨道之间的强杂化。此外,由于ICO团簇的稳定性低于TO团簇的稳定性,因此在CO和O-2吸附后,观察到了富Au团簇从ICO到TO的结构转变。还发现具有TO结构的自由Au12Pd1簇在自由簇中表现出最低的CO氧化能垒(0.17 eV)。当Au12Pd1团簇负载在单个空位缺陷石墨烯上时,与之相比,其稳定性增加,CO和O-2的吸附强度降低,CO氧化的能垒(0.41 eV)略有增加。观察到自由簇。预期我们的结果将对石墨烯负载的双金属纳米催化剂的未来应用有用。

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